Title :
A 3us wake-up time nonvolatile processor based on ferroelectric flip-flops
Author :
Wang, Yiqun ; Liu, Yongpan ; Li, Shuangchen ; Zhang, Daming ; Zhao, Bo ; Chiang, Mei-Fang ; Yan, Yanxin ; Sai, Baiko ; Yang, Huazhong
Author_Institution :
EE Dept., Tsinghua Univ., Beijing, China
Abstract :
Nonvolatile processors offer a number of desirable properties including instant on/off, zero standby power and resilience to power failures. This paper presents a fabricated nonvolatile processor based on ferroelectric flip-flops. These flipflops are used in a distributed fashion and are able to maintain system states without any power supply indefinitely. An efficient controller is employed to achieve parallel reads and writes to the flip-flops. A reconfigurable voltage detection system is designed for automatic system backup during power failures. Measurement results show that this nonvolatile processor can operate continuously even under power failures occurring at 20 KHz. It can backup system states within 7μs and restore them within 3 μs. Such capabilities will provide a new level of support to chip-level fine-grained power management and energy harvesting applications.
Keywords :
energy harvesting; ferroelectric devices; flip-flops; automatic system backup; chip-level fine-grained power management; energy harvesting; fabricated nonvolatile processor; ferroelectric flip-flop; frequency 20 kHz; parallel reads; parallel writes; power failure resilience; reconfigurable voltage detection system; system states; time 3 mus; time 7 mus; wake-up time nonvolatile processor; zero standby power; Capacitors; Nonvolatile memory; Power supplies; Random access memory; Registers; Semiconductor device measurement; Switching circuits;
Conference_Titel :
ESSCIRC (ESSCIRC), 2012 Proceedings of the
Conference_Location :
Bordeaux
Print_ISBN :
978-1-4673-2212-6
Electronic_ISBN :
1930-8833
DOI :
10.1109/ESSCIRC.2012.6341281